Reppel Michael, Fleischmann Bernd K, Reuter Hannes, Sasse Philipp, Schunkert Heribert, Hescheler Jürgen
Institute of Neurophysiology, University of Cologne, Cologne, Germany.
Cardiovasc Res. 2007 Jul 1;75(1):99-108. doi: 10.1016/j.cardiores.2007.03.018. Epub 2007 Mar 28.
The Na+/Ca2+ exchanger (NCX) is involved in embryonic heart development and function demonstrated by the abnormal myofibrillar organization, defects in heartbeat, and early embryonic death of NCX-null embryos. It was therefore the aim of our study to identify key functional regulators of the embryonic NCX.
NCX current (I(NCX)) density was measured as the Ni2+ (5 mM)-sensitive current applying the whole-cell patch-clamp technique in early (EDS, E10.5V) and late developmental stage (LDS, E16.5V) mouse ventricular cardiomyocytes.
Compared to LDS, cardiomyocytes derived from EDS showed a significantly higher basal I(NCX) density for the I(NCX) forward (-120 mV: -4.1+/-1 pA/pF, n=15 versus -1.7+/-0.4, n=11, p<0.05) and reverse modes (+60 mV: 4.0+/-0.9 pA/pF, n=15 versus 1.8+/-0.4, n=11, p<0.05). There was 2-3-fold elevation of forward and reverse current in LDS on application of ATP-gamma-S (2 mM) together with forskolin (1 microM) as well as intracellular application of the catalytic subunit of cAMP-dependent protein kinase (cPKA, 200 U/mL), cAMP (200 microM), phorbol 12-myristate-13-acetate (PMA), a direct activator of protein kinase C (PKC), and 8-Br-cGMP, a membrane permeable analog of cGMP. The specific PKC inhibitor Ro 31-8220 significantly reduced I(NCX) by 70%. Co-application of 20 microM PKA inhibitor Fragment 14-22 (PKI), a specific inhibitor of PKA, and cAMP significantly reduced the exchanger activity by approx 60%. Despite these obvious effects in LDS we could not detect a significant impact of these compounds on I(NCX) in EDS-derived cardiomyocytes. Application of the alkaline phosphatase to test for constitutive phosphorylation of NCX did not affect I(NCX) density in LDS but led to an approx 80% reduction of I(NCX) in EDS.
In EDS cardiomyocytes I(NCX) density is upregulated, at least in part by the high phosphorylation of the exchanger protein. At LDS, embryonic cardiomyocytes showed a strong increase of I(NCX) density upon stimulation by PKC- and PKA-dependent signalling pathways.
钠钙交换体(NCX)参与胚胎心脏发育和功能,这已通过NCX基因敲除胚胎的肌原纤维组织异常、心跳缺陷和早期胚胎死亡得到证实。因此,我们研究的目的是确定胚胎NCX的关键功能调节因子。
采用全细胞膜片钳技术,测量早期(胚胎发育第10.5天,EDS)和晚期(胚胎发育第16.5天,LDS)小鼠心室心肌细胞中NCX电流(I(NCX))密度,将其作为镍离子(5 mM)敏感电流进行测定。
与LDS相比,来自EDS的心肌细胞在I(NCX)正向模式(-120 mV:-4.1±1 pA/pF,n = 15 对比 -1.7±0.4,n = 11,p<0.05)和反向模式(+60 mV:4.0±0.9 pA/pF,n = 15 对比 1.8±0.4,n = 11,p<0.05)下显示出显著更高的基础I(NCX)密度。在LDS中,当应用ATP-γ-S(2 mM)与福斯可林(1 μM)以及细胞内应用环磷酸腺苷依赖性蛋白激酶(cPKA,200 U/mL)的催化亚基、环磷酸腺苷(200 μM)、佛波酯12-肉豆蔻酸酯13-乙酸酯(PMA,蛋白激酶C(PKC)的直接激活剂)和8-溴环鸟苷(8-Br-cGMP,环鸟苷酸的膜通透性类似物)时,正向和反向电流升高2-3倍。特异性PKC抑制剂Ro 31-8220使I(NCX)显著降低70%。20 μM PKA抑制剂片段14-22(PKI,PKA的特异性抑制剂)与环磷酸腺苷共同应用显著降低交换体活性约60%。尽管在LDS中有这些明显的作用,但我们未检测到这些化合物对来自EDS的心肌细胞中的I(NCX)有显著影响。应用碱性磷酸酶检测NCX的组成型磷酸化对LDS中的I(NCX)密度无影响,但导致EDS中的I(NCX)降低约80%。
在EDS心肌细胞中,I(NCX)密度上调,至少部分是由于交换体蛋白的高磷酸化。在LDS中,胚胎心肌细胞在PKC和PKA依赖性信号通路刺激下I(NCX)密度显著增加。